Publication: Evolutionary analysis of the LORELEI gene family in plants reveals regulatory subfunctionalization
Evolutionary analysis of the LORELEI gene family in plants reveals regulatory subfunctionalization
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Noble, J. A., Bielski, N. V., Liu, M.-C. J., DeFalco, T. A., Stegmann, M., Nelson, A. D. L., McNamara, K., Sullivan, B., Dinh, K. K., Khuu, N., Hancock, S., Shiu, S.-H., Zipfel, C., Cheung, A. Y., Beilstein, M. A., & Palanivelu, R. (2022). Evolutionary analysis of the LORELEI gene family in plants reveals regulatory subfunctionalization. Plant Physiology, 190(4), 2539–2556. https://doi.org/10.1093/plphys/kiac444
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A signaling complex comprising members of the LORELEI (LRE)-LIKE GPI-anchored protein (LLG) and Catharanthus roseus RECEPTOR-LIKE KINASE 1-LIKE (CrRLK1L) families perceive RAPID ALKALINIZATION FACTOR (RALF) peptides and regulate growth, reproduction, immunity, and stress responses in Arabidopsis (Arabidopsis thaliana). Genes encoding these proteins are members of multigene families in most angiosperms and could generate thousands of signaling complex variants. However, the links between expansion of these gene families and the functio
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Noble, J. A., Bielski, N. V., Liu, M.-C. J., DeFalco, T. A., Stegmann, M., Nelson, A. D. L., McNamara, K., Sullivan, B., Dinh, K. K., Khuu, N., Hancock, S., Shiu, S.-H., Zipfel, C., Cheung, A. Y., Beilstein, M. A., & Palanivelu, R. (2022). Evolutionary analysis of the LORELEI gene family in plants reveals regulatory subfunctionalization. Plant Physiology, 190(4), 2539–2556. https://doi.org/10.1093/plphys/kiac444